Description
L’unité fonctionnelle étudiée est de "Connecter des câbles detransport d’énergie tripolaires à des matériels, exprimé pourune unité de conditionnement, dans des conditions d’utilisationidentiques à celles du câble, à savoir :1 A pendant 40 années et un taux d’utilisation de 100%,en conformité avec les normes en vigueur" comme définie dans lePSR 0001-ed3-FR-2015 10 16.
Indicator |
Unit |
Total |
Manufacturing |
Distribution |
Installation |
Use |
End of Life |
Use B1 |
Maintenance B2 |
Repair B3 |
Replacement B4 |
Refurbishment B5 |
Operational energy use B6 |
Operational water use B7 |
Global warming |
kg.eq.CO2 |
00E+0 |
5.99E+1 |
3.65E+0 |
2.06E+0 |
8.07E+3 |
2E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Ozone depletion |
kg.eq.CFC-11 |
00E+0 |
6.15E-6 |
7.41E-9 |
8.68E-9 |
1.96E-3 |
3.16E-8 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Acidification of soil and water |
kg.eq.SO2 |
00E+0 |
1.74E-1 |
1.64E-2 |
1.61E-3 |
6.1E+1 |
8.42E-3 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Water eutrophication |
kg.eq.P04 3- |
00E+0 |
1.04E-1 |
3.77E-3 |
4.21E-3 |
2.29E+0 |
6.82E-3 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Photochemical Ozone formation |
kg.eq.C2H4 |
00E+0 |
1.38E-2 |
1.17E-3 |
5.19E-4 |
2.88E+0 |
6.4E-4 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Depletion of abiotic resources - elements |
kg.eq.Sb |
00E+0 |
9.07E-4 |
1.46E-7 |
1.88E-8 |
3.68E-4 |
1.08E-7 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Depletion of abiotic resources - fossil fuels |
MJ |
00E+0 |
8.86E+2 |
5.14E+1 |
4.45E+0 |
8.31E+4 |
2.27E+1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Water pollution |
m³ |
00E+0 |
7.87E+3 |
6.01E+2 |
1.33E+2 |
3.39E+5 |
2.65E+2 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Air pollution |
m³ |
00E+0 |
5.68E+3 |
1.5E+2 |
3.61E+1 |
3.46E+5 |
1.79E+2 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of renewable primary energy, excluding renewable primary energy resources used as raw materials |
MJ |
00E+0 |
4.59E+1 |
6.89E-2 |
5.1E-2 |
1.17E+4 |
3.37E-1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of renewable primary energy resources used as raw materials |
MJ |
00E+0 |
4.57E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Total use of renewable primary energy resources (primary energy and primary energy resources used as raw materials) |
MJ |
00E+0 |
5.05E+1 |
6.89E-2 |
5.1E-2 |
1.17E+4 |
3.37E-1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of non-renewable primary energy, excluding non-renewable primary energy resources used as raw materials |
MJ |
00E+0 |
8.02E+2 |
5.16E+1 |
4.7E+0 |
1.52E+5 |
2.38E+1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of non-renewable primary energy resources used as raw materials |
MJ |
00E+0 |
3.36E+2 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Total use of non-renewable primary energy resources (primary energy and primary energy resources used as raw materials) |
MJ |
00E+0 |
1.14E+3 |
5.16E+1 |
4.7E+0 |
1.52E+5 |
2.38E+1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of secondary materials |
kg |
00E+0 |
2.43E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of renewable secondary fuels |
MJ |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Use of non-renewable secondary fuels |
MJ |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Net use of fresh water |
m³ |
00E+0 |
2.97E+1 |
3.27E-4 |
2.41E-4 |
2.11E+1 |
1.11E-3 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Hazardous waste disposed of |
kg |
00E+0 |
7.53E+1 |
00E+0 |
1.95E-3 |
00E+0 |
5.19E-3 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Non-hazardous waste disposed of |
kg |
00E+0 |
7.29E+1 |
1.3E-1 |
2.84E+0 |
3.02E+4 |
1.29E+1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Radioactive waste disposed of |
kg |
00E+0 |
6.78E-2 |
9.25E-5 |
6.17E-5 |
2.46E+1 |
3.95E-4 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Components for re-use |
kg |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Materials for recycling |
kg |
00E+0 |
1.2E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Materials for energy recovery |
kg |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Exported energy |
MJ by energy vector |
00E+0 |
1.94E-1 |
00E+0 |
1.06E-1 |
00E+0 |
9.69E-3 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
Total use of primary energy during the life cycle |
MJ |
00E+0 |
1.19E+3 |
5.17E+1 |
4.75E+0 |
1.64E+5 |
2.42E+1 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |
00E+0 |